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首页> 外文期刊>Antimicrobial agents and chemotherapy. >Identification of Small-Molecule Inhibitors of Nucleoside Triphosphate Hydrolase in Toxoplasma gondii.
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Identification of Small-Molecule Inhibitors of Nucleoside Triphosphate Hydrolase in Toxoplasma gondii.

机译:弓形虫中核苷三磷酸水解酶小分子抑制剂的鉴定。

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摘要

Approximately 150,000 small-molecule compounds were tested by a robotic screening assay for their ability to inhibit nucleoside triphosphate hydrolase (NTPase), a novel enzyme of the tachyzoite form of Toxoplasma gondii. Five unrelated species of compounds were found to inhibit the activities of both NTPase isoforms (NTPase isoform I [NTPase-I] and NTPase-II). The 50% inhibitory concentrations (IC(50)s) ranged from 0.1 to 20 microM, and in general, the IC(50)s were similar for both NTPase isoforms. However, the activity of NTPase-I was 20 times more sensitive than the activity of NTPase-II to one of the inhibitors: 9-hydroxy-10-(pentachlorophenoxy)stearic acid. The five compounds identified also prevented tachyzoite replication in vitro, with IC(50)s ranging from approximately 7 to >/=50 microM. The most effective of these initial compounds, 2-phenylthio-indole, was used to identify six additional, structurally related compounds, which were tested for their inhibitory effects on enzyme activities and tachyzoite replication. Surprisingly, these compounds were competitive inhibitors of NTPase-I but noncompetitive inhibitors of NTPase-II. Modifications to the indole and phenol rings resulted in alterations of activity, thus providing insight into the structural features that are important for inhibition of T. gondii NTPases.
机译:通过机器人筛选测定法测试了大约150,000个小分子化合物抑制核苷三磷酸水解酶(NTPase)的能力,这是一种弓形虫速殖子形式的新型酶。发现五种无关的化合物抑制两种NTPase亚型(NTPase I [NTPase-I]和NTPase-II)的活性。 50%抑制浓度(IC(50)s)介于0.1到20 microM之间,通常,这两种NTPase亚型的IC(50)相似。但是,NTPase-I的活性比NTPase-II的活性对以下一种抑制剂的敏感性高20倍:9-羟基-10-(五氯苯氧基)硬脂酸。确定的五种化合物还阻止了速殖子体外复制,IC(50)的范围从大约7到> / = 50 microM。这些初始化合物中最有效的2-苯硫基吲哚被用于鉴定另外六个与结构相关的化合物,并测试了它们对酶活性和速殖子复制的抑制作用。令人惊讶地,这些化合物是NTPase-I的竞争性抑制剂,但是是NTPase-II的非竞争性抑制剂。吲哚和苯酚环的修饰导致活性的改变,从而提供了对抑制弓形虫NTPases重要的结构特征的见解。

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